Chung H J, Ferl R J
Program in Plant Molecular and Cellular Biology, Department of Horticultural Sciences, University of Florida, Gainesville, Florida 32611, USA.
Plant Physiol. 1999 Oct;121(2):429-36. doi: 10.1104/pp.121.2.429.
It is widely accepted that the Arabidopsis Adh (alcohol dehydrogenase) gene is constitutively expressed at low levels in the roots of young plants grown on agar media, and that the expression level is greatly induced by anoxic or hypoxic stresses. We questioned whether the agar medium itself created an anaerobic environment for the roots upon their growing into the gel. beta-Glucuronidase (GUS) expression driven by the Adh promoter was examined by growing transgenic Arabidopsis plants in different growing systems. Whereas roots grown on horizontal-positioned plates showed high Adh/GUS expression levels, roots from vertical-positioned plates had no Adh/GUS expression. Additional results indicate that growth on vertical plates closely mimics the Adh/GUS expression observed for soil-grown seedlings, and that growth on horizontal plates results in induction of high Adh/GUS expression that is consistent with hypoxic or anoxic conditions within the agar of the root zone. Adh/GUS expression in the shoot apex is also highly induced by root penetration of the agar medium. This induction of Adh/GUS in shoot apex and roots is due, at least in part, to mechanisms involving Ca2+ signal transduction.
普遍认为,拟南芥乙醇脱氢酶(Adh)基因在琼脂培养基上生长的幼苗根部以低水平组成型表达,并且其表达水平在缺氧或低氧胁迫下会大幅诱导。我们质疑琼脂培养基本身在根部生长进入凝胶时是否为根部创造了厌氧环境。通过在不同生长系统中培养转基因拟南芥植株,检测了由Adh启动子驱动的β-葡萄糖醛酸酶(GUS)表达。在水平放置平板上生长的根显示出高Adh/GUS表达水平,而垂直放置平板上的根则没有Adh/GUS表达。其他结果表明,在垂直平板上生长紧密模拟了土壤生长幼苗中观察到的Adh/GUS表达,而在水平平板上生长导致高Adh/GUS表达的诱导,这与根区琼脂内的缺氧或无氧条件一致。琼脂培养基的根部穿透也会高度诱导茎尖中的Adh/GUS表达。茎尖和根中Adh/GUS的这种诱导至少部分归因于涉及Ca2+信号转导的机制。